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A Sr-Nd-Hf isotope characterization of dust source areas in Victoria Land and the McMurdo Sound sector of Antarctica

机译:南极维多利亚州土地和南极麦克默多峡湾地区尘埃源区的Sr-Nd-Hf同位素表征

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摘要

Determining the geographical provenance of dust provides crucial insight into the global dust cycle. For the East Antarctic Ice Sheet (EAIS), the importance of Southern hemisphere potential dust sources has been thoroughly investigated using radiogenic isotopes, whereas proximal dust source areas located on the periphery of the ice sheet remain poorly documented from a geochemical standpoint. In this work, we expand the existing isotopic (Srsingle bondNd) catalogue of dust and sand-sized sediments from Victoria Land and the McMurdo Sound sector, and incorporate Hf isotopic data to place additional constraints on dust source identification. The isotopic field for materials considered in this study is characterized by 87Sr/86Sr ratios ranging from 0.703 to 0.783, εNd between −12.01 and 6.36, and εHf from −16.77 to 6.89. As reported in previous works, the data reveal close relationships between Antarctic sediments and distinct parent lithologies; in addition, our findings emphasize the background presence of very fine dusts originating from dominant global sources and regional volcanic activity as barriers to direct source-to-sink comparison of isotopic signatures. Thus, geochemical characterizations of dust sources to the Antarctic ice sheet involving multiple size fractions, including coarser-grained particles more susceptible to short-range transport, can help us to rule out global sources of dust when examining local sediment cores and ice cores.
机译:确定粉尘的地理来源可提供对全球粉尘循环的关键见解。对于南极东部冰盖(EAIS),已经使用放射同位素对南半球潜在粉尘源的重要性进行了彻底调查,而从地球化学角度来看,位于冰盖外围的近端粉尘源区域的记录仍然很少。在这项工作中,我们扩展了维多利亚州土地和麦克默多峡湾地区现有的尘埃和沙尘沉积物同位素(Srsingle bondNd)目录,并结合了iso同位素数据,以对尘埃来源识别施加其他限制。本研究中考虑的材料的同位素场的特征在于87Sr / 86Sr的比率范围为0.703至0.783,εNd在-12.01到6.36之间,而εHf在-16.77到6.89之间。如以前的工作所报道,这些数据揭示了南极沉积物与不同母岩性之间的密切关系。此外,我们的研究结果强调了来自全球主要来源和区域火山活动的极细粉尘的背景存在,这些粉尘阻碍了同位素特征直接从源到库的比较。因此,南极冰盖上尘埃来源的地球化学特征包括多个尺寸部分,包括更容易进行短程运输的较粗颗粒,可以帮助我们在检查局部沉积物芯和冰芯时排除全球尘埃来源。

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